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Mycorrhiza-induced resistance: more than the sum of its parts?

机译:菌根诱导的抗药性:超过其各个部分的总和?

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摘要

Plants can develop an enhanced defensive capacity in response to infection by arbuscular mycorrhizal fungi (AMF). This 'mycorrhiza-induced resistance' (MIR) provides systemic protection against a wide range of attackers and shares characteristics with systemic acquired resistance (SAR) after pathogen infection and induced systemic resistance (ISR) following root colonisation by non-pathogenic rhizobacteria. It is commonly assumed that fungal stimulation of the plant immune system is solely responsible for MIR. In this opinion article, we present a novel model of MIR that integrates different aspects of the induced resistance phenomenon. We propose that MIR is a cumulative effect of direct plant responses to mycorrhizal infection and indirect immune responses to ISR-eliciting rhizobacteria in the mycorrhizosphere.
机译:植物可以响应丛枝菌根真菌(AMF)的感染而增强防御能力。这种“菌根诱导的抗性”(MIR)提供了针对广泛攻击者的系统保护,并与病原体感染后的系统获得性抗性(SAR)和非病原性根瘤菌根定殖后诱导的系统性抗性(ISR)具有共同的特征。通常认为,对植物免疫系统的真菌刺激是造成MIR的唯一原因。在这篇观点文章中,我们提出了一种新型的MIR模型,该模型集成了感应电阻现象的不同方面。我们提出,MIR是对菌根感染的直接植物反应和对菌根体内引起ISR的根际细菌的间接免疫反应的累积效应。

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